Developmental emergence of quiescent-like neural progenitor cells in the zebrafish embryonic brain
Liu, Y.; Lembke, C.-S.; Paridaen, J. T. M. L.
Show abstract
The mature brain is made up of differentiated neurons and glial cells that are produced by embryonic neural stem and progenitor cells (collectively called neural stem cells (NSCs)) during brain development. In contrast, adult NSCs generate only a limited number of neuronal and glial cell types. Moreover, in contrast to embryonic NSCs, adult NSCs spend most of their time in a non-dividing resting phase called quiescence. In the adult brain, the quiescent NSCs are activated at a low frequency to divide and produce new cells to replace lost or damaged mature cells. Previous studies have demonstrated that about halfway through mammalian brain development, a subset of the embryonic NSCs population slows down their division rate and slowly transition into adult quiescent NSCs (qNSCs). However, the molecular mechanisms that underlie the emergence of the pre-adult SCs remain largely unknown. Here, we explored single-cell transcriptomes from several embryonic stages of zebrafish development in order to determine at what developmental stage transcriptional signatures typical of adult quiescent NSCs first emerge. We identified a subpopulation of embryonic NSCs with a distinct transcriptional profile from other embryonic NSCs. This population shares transcriptional similarities with adult qNSCs including genes known to maintain quiescence. We propose that this population constitute slower cycling embryonic NSCs that may transition into the adult qNSCs of the adult zebrafish brain.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A single cell transcriptome atlas of the developing zebrafish hindbrain 96%
- Single-cell transcriptomics of the early developing mouse cerebral cortex disentangles the spatial and temporal components of neuronal fate acquisition 95%
- Directed differentiation of human hindbrain neuroepithelial stem cells recapitulates cerebellar granule neurogenesis 95%
Similar papers in this journal
- An atlas of neural crest lineages along the posterior developing zebrafish at single-cell resolution 95%
- A single-cell transcriptomic atlas reveals resident dendritic-like cells in the zebrafish brain parenchyma 94%
- A β-catenin-driven switch in TCF/LEF transcription factor binding to DNA target sites promotes commitment of mammalian nephron progenitor cells 94%
Similar papers in this journal
- Prosaposin maintains adult neural stem cells in a state associated with deep quiescence 95%
- Rostrocaudal Patterning and Neural Crest Differentiation of Human Pre-Neural Spinal Cord Progenitors in vitro 95%
- Single cell transcriptomics reveals correct developmental dynamics and high-quality midbrain cell types by improved hESC differentiation. 95%
Similar papers in this journal
- Temporal single-cell transcriptomic analysis of the sox1a:eGFP transgenic line identified the lateral floor plate progenitor cells as the origin of intraspinal serotonergic neurons 96%
- Zebrafish Neuromesodermal Progenitors Undergo a Critical State Transition in vivo 95%
- HES1 protein oscillations are necessary for neural stem cells to exit from quiescence 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.